EP2353934B1 - Tendeur cliquet et accessoire d'élingage comportant un tel tendeur cliquet - Google Patents

Tendeur cliquet et accessoire d'élingage comportant un tel tendeur cliquet Download PDF

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Publication number
EP2353934B1
EP2353934B1 EP20100152318 EP10152318A EP2353934B1 EP 2353934 B1 EP2353934 B1 EP 2353934B1 EP 20100152318 EP20100152318 EP 20100152318 EP 10152318 A EP10152318 A EP 10152318A EP 2353934 B1 EP2353934 B1 EP 2353934B1
Authority
EP
European Patent Office
Prior art keywords
adapter
bolt
tensioning
console
bolt elements
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP20100152318
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German (de)
English (en)
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EP2353934A1 (fr
Inventor
Ralf Schmitz
Ingo Burbach
Peter Klein
André Mamié
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Spanset Inter AG
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Spanset Inter AG
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Publication date
Application filed by Spanset Inter AG filed Critical Spanset Inter AG
Priority to EP20100152318 priority Critical patent/EP2353934B1/fr
Publication of EP2353934A1 publication Critical patent/EP2353934A1/fr
Application granted granted Critical
Publication of EP2353934B1 publication Critical patent/EP2353934B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60PVEHICLES ADAPTED FOR LOAD TRANSPORTATION OR TO TRANSPORT, TO CARRY, OR TO COMPRISE SPECIAL LOADS OR OBJECTS
    • B60P7/00Securing or covering of load on vehicles
    • B60P7/06Securing of load
    • B60P7/08Securing to the vehicle floor or sides
    • B60P7/0823Straps; Tighteners
    • B60P7/083Tensioning by repetetive movement of an actuating member

Definitions

  • Tension ratchets are used to tension a tension belt, which is set for fixing to one or more attachment points or holding a good to be transported, so that the held by the tension belt Good is also held securely under the dynamic forces occurring during transport.
  • a basic problem in the handling of equipped with such a tensioning ratchet slings consists in that the tension belt must be placed on the one hand to the respective good or the attachment points used for its attachment and on the other hand with its one end portion with the winding shaft and with its other end portion with the Bolt elements must be coupled so that there is a permanently fixed connection is guaranteed.
  • one of the end portions of the tensioning belt to form an eyelet is placed around a bolt carried by the bracket of the tensioning ratchet and passing through the eyelet and sewn firmly to the tensioning belt.
  • this so-called “Festende” of the tensioning belt is firm and captive with the tensioning ratchet connected.
  • the disadvantage here is that the adaptation of the effective length of the tensioning belt to the circumference of the goods to be transported or the local conditions alone can be done via the end portion, which is threaded into the winding shaft after looping the Guts or the respective stop means.
  • a tensioning ratchet which in accordance with a tensioning ratchet according to the invention a console, a winding shaft rotatably mounted in the console for winding the one with an end portion connectable to the winding shaft tensioning belt, a tensioning lever for rotating the winding shaft about a rotation axis and two parallel and spaced from each other has arranged on the console, at a fixed distance from each other positioned bolt elements around which their associated end portion of the tensioning belt is scrolled.
  • the pin elements are aligned axially parallel to the winding shaft.
  • the bolt arranged closer to the winding shaft is formed semi-cylindrical with one of the winding shaft facing, outwardly curved peripheral surface portion and a cylindrically shaped other bolt associated planar peripheral surface portion. In this way, a comparable sharp-edged transition region is formed between the respective peripheral sections.
  • the clamping of the tensioning belt between the bolt elements produced in this way proves to be disadvantageous, as it is often difficult under the generally prevailing on-site rough conditions, after readjusting the tensioning strap readjust the length. Although it can be loosened by loosening the tensioning ratchet tension belt.
  • the prevailing in the bolt elements between the layers of the tensioning belt due to friction or clamping forces self-locking is usually so large that they can be solved only with considerable effort or using tools that lead to damage to the belt can.
  • the object of the invention was to provide a tensioning ratchet which can be produced in a cost-effective manner and a stop means equipped with such a tensioning ratchet which, with simple handling even under high loads, ensures a permanently secure attachment of the respective goods to be transported allow.
  • the bolt elements present in a conventional tensioning ratchet of the type described above for engaging one end portion of the respective tensioning belt are supported by an adapter pivotably connected to the bracket about an axis parallel to the winding shaft of the tensioning ratchet.
  • a first possibility, in a tensioning ratchet according to the invention in practical use in the area of the bolt elements to ensure an optimal degree of wrap through the adapter portion associated end portion of the tensioning belt, is that the adapter a Connecting portion, via which the adapter is coupled to the console, and having a support portion to which the bolt elements are fixed, at the same time the connecting portion and the support portion are aligned at an angle to each other, that the plane in which the axes of the bolt elements are common, differs from the plane in which the pivot axis of the adapter and the winding shaft lie together.
  • the connecting portion and the support portion of the adapter include an obtuse angle when viewed on a normal plane to the pivot axis of the adapter.
  • the winding shaft, pivot axis and axes of the pin elements of the clamping claw according to the invention are positioned offset from one another in two or more planes both in the unstressed and in the stressed state.
  • the bolt elements of the adapter with respect to the pivot axis or winding shaft so that the adapter automatically pivots due to the tensile forces acting on it in a tensioned position in a position in which the action line acting on the tensioning ratchet Tensile forces are each aligned parallel to the direction of the longitudinal extent of the console.
  • the console is then subjected as far as possible pure tensile load that can be easily absorbed by her even if it is made of a simple sheet metal material.
  • the above-explained embodiment of the invention has the advantage that in the clamped state of the adapter led away part of the lashing each flat on the bolt elements rests and in this way ensures a secure fit optimal wrap the bolt elements is ensured.
  • the looping of the adapter of the associated end portion of the lashing can be simplified in that a stop is provided on the console, which limits the pivoting range of the adapter.
  • the stop can also be used to force the adapter in a position in which an optimal wrap of the bolt elements is ensured under normal operating conditions.
  • the abovementioned abutment may be designed, for example, in the form of a detent which holds the adapter in a fixed retention position with respect to the console of the tensioning ratchet by clamping force during the looping in, but under the tensile forces acting in the tensioned state and the torques associated therewith without More can be overcome.
  • the stop it is possible to form the stop so that on the one hand only a limited to no mobility of the adapter with respect to the console of the tensioning ratchet allowed, but on the other hand can be overcome in the case of unfavorable conditions to protect against overloading of the tensioning ratchet in the manner of a predetermined breaking point if the forces acting on it are so high that they could endanger the dimensional stability of the console of the tensioning ratchet.
  • the invention articulated connection between the console and adapter while still ensuring a safe function of the tensioning ratchet when the respective attack due high effective forces is overcome and the adapter is no longer supported.
  • the adapter and the console are each exposed by far the predominant part of a pure tensile load, it is easily possible to inexpensively manufacture not only the console, but also the adapter made of sheet metal.
  • the inventive design of a tensioning ratchet requires no fundamental transformation of existing ratchet concepts, but can be easily combined with existing designs.
  • the adapter may for this purpose have the form of a frame or be formed by two simple, spaced-apart sheet metal parts, which are fixedly connected to each other via the bolt elements carried by them and extending between them.
  • this fastening element can be used to pivotably fasten the adapter to the bracket.
  • the fastener in question is already a screw or the like, which is used in place of the bolt previously used to hold the one end of the tether.
  • both bolt elements are formed such that their peripheral surface is arched over the entire circumference outwards, ie, the bolt elements have a substantially cylindrical shape. This allows a maximization of effective in terms of self-locking of the looped around the bolt elements end portion of the tensioning belt.
  • the cylindrical shape of the bolt elements ensures that, when the tensioning belt is loosened, the layers of the tensioning belt wound around the bolt elements can be displaced with little effort for readjustment.
  • the hold of the tensioning belt on the bolt elements, which is effected in the tensioned state, can also be assisted by the fact that both bolts are provided with a surface structure which, when the tension belt is looped around the bolt elements in frictional or positive connection with the strap.
  • the provided on the peripheral surfaces of the bolt elements surface structure may be formed by a simple roughening, in which more or less randomly distributed elevations and depressions of sufficient height or depth are formed on the peripheral surface of the bolt elements.
  • the roughness generated at the peripheral surfaces should be so strong that, even after prolonged use and the surface wear possibly associated therewith, a sufficient frictional or positive locking of the tensioning belt and bolt elements is ensured in practical use.
  • the surface structure is formed by elevations and depressions formed in a regular arrangement in the peripheral surface of the bolt elements.
  • the orderly formation of the surface structure allows an exact and unambiguous control of the nature of each surface structure produced.
  • tensioning ratchet 1 for tensioning a tensioning belt G has a bracket 2, a formed by two deflecting 4.5, in the bracket 2 rotatably mounted winding shaft 3 and a tensioning lever 6 for rotating the winding shaft 3 about a rotation axis Dw.
  • the tensioning belt G may, for example, be a conventional belt strap or a flat belt produced by extrusion.
  • the bracket 2 is formed by two mutually parallel leg plates 7.8, in the front region of which in each case a bearing opening is formed. Through the respective bearing opening the winding shaft 3 is inserted with its respective associated end portion.
  • the tensioning lever 6 has the basic shape of a U whose base is formed by a handrail 11, to which side leg plates 12,13 connect. In the area of their free, the console 2 laterally comprehensive ends, the leg plates 12,13 each also have an opening into which the winding shaft 3 engages with its respective end portion.
  • the winding shaft 3 can be rotated freely with the ratchet gears by pivoting the clamping lever 6 about the axis Dw.
  • a locking member 16 is slidably mounted, which, for example, loaded by a spring, not shown here for clarity, automatically locked so with the ratchet gears 9,10 that the winding shaft 3 is held in the respective rotational position.
  • leg plates 7, 8 of the console 2 likewise each have a passage opening. Through these passage openings is a bolt 17 inserted, on the one hand serves to hold the leg plates 7.8 in the respective end region at a certain fixed distance, and on the other hand, an adapter 18 is mounted.
  • the adapter 18 is formed in each case from two 19.20 legs and two bolt elements 21, 22, which are formed parallel to one another and at a distance from one another by a respective metal strip.
  • the bolt elements 21,22 extend between the mutually facing flat sides of the legs 19,20 and are each pressed with their ends against rotation and captive in their associated opening 19,20.
  • the legs 19,20 of the adapter 18 are held in this way by the pin members 21,22 at a fixed distance.
  • the legs 19, 20 hold the bolt elements 21, 22 aligned axially parallel to one another and with respect to the winding shaft 3 in a likewise defined distance from one another.
  • the console 2 facing end portions, the legs 19,20 each have a bearing opening through which the bolt 17 is guided.
  • the effected in this way by means of the bolt 17 fastening of the adapter 18 to the bracket 2 is in each case articulated by the cylindrical shaft portion of the bolt 17 forms a pivot axis S to which the adapter 18 is pivotally mounted about its the bolt 17 receiving bearing openings ,
  • the peripheral surfaces 23, 24, which are curved uniformly outwards, have the same in this Cylindrical cylindrical elements 21,22 a rough, crenulated surface structure, which, as in 6 and 7 indicated, characterized by uniformly arranged pyramidal elevations 25, between each of which narrow notch-like valleys 26 are embossed in the respective peripheral surface.
  • the surface structure thus formed is mechanically stamped into the respective peripheral surface prior to assembly of the adapter 18. Their elevations protrude uniformly in the radial direction, so that they are equally effective regardless of which circumferential direction U1, U2 the respective tension or friction force acts on.
  • each of the in the FIGS. 2 to 5 illustrated variant of the tensioning ratchet 1 comprise the integrally formed from sheet steel legs 19,20 of the adapter 18 each have a bolt members 21,22 supporting support portion 19a, 20a and a connected thereto connecting portion 19b, 20b.
  • the bearing openings for the bolt 17 are in each case formed in the free end region of the connecting portions 19b, 20b.
  • the connecting portions 19b, 20b starting from the support portions 19a, 20a laterally directed against each other so far cranked that rest their provided with the bearing openings end portions of their respective associated side surface of the facing inner sides of the leg plates 7.8 of the console 2.
  • the tensioning belt G With its end portion 28 assigned to the adapter 18, the tensioning belt G is in each case looped into the adapter 18 or its bolt elements 21, 22.
  • the tensioning ratchet 1 is the tension belt G first from the bottom U of the adapter 18 forth in the space defined by the bolt 17 and the bolt member 21 arranged adjacent thereto.
  • the tensioning belt G is guided from the upper side O of the adapter 18 forth in the space defined by the bolt 17 and the bolt member 21 adjacent thereto.
  • the free end 29 of the end portion 28 is held out in each case beyond the second bolt member 22.
  • the tension belt G is placed around the bolt member 21 and guided by the space defined by the bolt members 21,22. Subsequently, the tension belt G from below ( Figures 2 . 3 ) or above ( FIGS. 4 . 5 ) ago around the remote from the winding shaft 3 outer bolt element 22 placed.
  • the tensioning belt G is returned via its already lying on the bolt member 21 layer 30 and by the space defined by the bolt 17 and the bolt member 21 space down ( Figures 2 . 3 ) or above ( FIGS. 4 . 5 ) are placed around the bolt member 21 to finally be guided away in a direction away from the winding shaft 3 direction of the adapter 18.
  • the tensioning belt G presses under the action of the clamping force Z its placed around the bolt member 21 position 30 against the rough peripheral surface 23 of the bolt member 21 at the same time he pushes his end portion 28 against his laid around the bolt member 22 layer 31 and the relevant situation 31st against the rough peripheral surface 24 of the bolt member 22.
  • the already connected with its one end portion 28 with the adapter 18 tension belt G is placed around the relevant good. Subsequently, the hitherto free other end portion 32 of the tensioning belt G is inserted into the limit of the deflection webs 4.5 of the winding shaft 3 slot and placed in a conventional manner to the deflection webs 4.5, that he tensioned strap G through the on it lying layers of the tensioning belt G pressed against the deflection webs 4.5 and held there frictionally.
  • the winding shaft 3 is rotated by actuation of the tensioning lever 6, so that the tensioning belt G is wound on the winding shaft 3 until it is sufficiently taut and a sufficiently high tensile force Z acts in the tensioning belt G.
  • the legs 19,20 of the adapter 18 are each formed elongated, so that the central axes of their respective support 19a, 20a and connecting portions 19b, 20b are each arranged together in a plane.
  • the connecting portions 19b each have one over its bearing opening in the direction of the winding shaft 3 protruding support portion 33 which is formed at its free, the winding shaft 3 associated end in the manner of a cam.
  • This support portion 33 cooperates with a stop 34 which extends axially parallel to the winding shaft 3 between the leg plates 7.8 of the console 2.
  • the support portion 33, the position of the pivot axis S and the position of the stopper 34 are adapted to each other, that the adapter 18 under the action of the clamping force Z, the over the first on the winding shaft 3 associated bolt member 21 engaging strap G in the adapter 18th is introduced, is pivoted about the pivot axis S until the respective support portions 33 of the legs 19,20 are supported against the stop 34.
  • the adapter 18 assumes a tensioned tension ratchet 1 under the action of the clamping force Z a position in which the action lines Wz of the winding shaft 3 and the adapter 18 respectively attacking, mutually directed forces Z are aligned.
  • the adapter 18 is oriented with respect to the console 2 in such a way that the tensioning belt G guided away from the adapter 18 lies completely on the layer 40 of the end section 28 extending between the pin elements 21, 22 and moving into the position 30 and resting on the layer 31 of the tensioning belt G rests and a maximum overlap of the tensioning belt G is ensured with the looped into the adapter 18 layers 30,31,40 of its end portion 28.
  • the stop 34 thereby supports the adapter 18 against the effective moment about the pivot axis S, which releases the clamping force Z over the first on the bolt member 21 acting on the strap 18 exerts on the adapter 18.
  • the angle ⁇ enclosed by the carrying sections 19a, 20a and the connecting sections 19b, 20b and the length L of the connecting sections 19b, 20b are dimensioned such that under the effect of the tension Z which prevails after tensioning the tensioning strap by means of the tensioning ratchet 1, the adapter 18 automatically assumes a position in which the outgoing from the adapter 18 tension belt G and its outgoing from the winding shaft 3 portion are aligned on the one hand in alignment with each other and on the other hand, the outgoing from the adapter 18 tension belt G at the extending between the pin members 21,22 position 40 of the end portion 28th the tensioning belt G is tight.
  • a maximum overlap of the superimposed in the adapter 18 layers 30,31,40 of the end portion 28 of the tensioning belt G and a correspondingly secure hold of the tensioning belt G is thus guaranteed in this embodiment.
  • a support portion 35 is also formed at the free on the pivot axis S in the direction of the winding shaft 3 protruding end.
  • a recess 36 is formed, in which the stop 34 is seated with its the pivot axis S associated edge region with great play.
  • the pivoting range of the adapter 18 to the Pivot axis S is limited in this way by the recess 36 upwardly and downwardly bounding end portions 37,38 of the support portion 35, so that the adapter 18 is held at not effective tensile force Z relative to the console loosely in a position in which a looping of the Tensioning belts G can be easily made.
  • the game present in the region of the recess 36 is at the same time dimensioned such that no contact between the support section 35 and the stop 34 exists when the adapter Z is under the action of the tension Z, ie the bracket 2 is free of a moment load emanating from the adapter 18 ,
  • the legs 19,20 of the adapter 18 are each formed elongated, so that the central axes of their respective support 19a, 20a and connecting portions 19b, 20b are each arranged together in a plane.
  • the console 2 under the action of the tensile force Z free from the adapter 18 outgoing torque loads and at the same time to ensure optimal looping of the looped into the adapter 18 end portion 18 of the tensioning strap, here are the support portions 19a, 20a of the legs 19,20 extended beyond the externally arranged bolt member 22 out and carry there a support pin 39 which extends axially parallel to the pin members 21,22 between the legs 19,20.
  • the tension belt G led away from the adapter 18, after it is placed from above on its already lying on the pin members 21,22 layers, from above through that of the outer Bolt member 22 and the support pin 39 limited space out.
  • the tensioning belt Under the tensile force Z which prevails after tightening the tensioning belt G by means of the tensioning ratchet 1, the tensioning belt lays against the support pin 39 from below. This results in a moment about the pivot axis S which is opposite to the moment resulting from the deflection of the tensioning belt G arises on the inner bolt element 21. Accordingly, under the tensile force Z, the adapter 18 likewise automatically aligns itself so that the line of action Wz of the tensile force Z acting on the adapter 18 and the winding shaft 3 are aligned with one another.
  • the support bolt 39 ensures that the tension belt G guided away from the adapter 18 rests on the position 40 of the end section 28 extending between the pin elements 21, 22, thus ensuring maximum overlap of the layers lying on top of one another in the region of the adapter 18 and a correspondingly secure hold Tensioning belts G is secured.
  • REFERENCE NUMBERS 1 Tensioning ratchet for tensioning the tensioning belt G 2 console 3 winding shaft 4.5 Deflection webs of the winding shaft 6 clamping lever 7.8 Leg plates of the console 2 9.10 Ratchet gears 11 Handbar of the clamping lever 6 12.13 Leg plates of the clamping lever.

Claims (12)

  1. Tendeur cliquet pour tendre une sangle de serrage (G), lequel est doté d'une base, d'un arbre d'enroulement (3) monté à rotation dans la base (2) et destiné à l'enroulement de la sangle de serrage (G), qui, à l'une de ses extrémités (32), peut être reliée à l'arbre d'enroulement (3), d'un levier tendeur (6), qui est destiné à faire tourner l'arbre d'enroulement (3) autour d'un l'axe de rotation (Dw), et de deux éléments rn forme d'axes (21, 22), qui, disposés sur la base (2), parallèlement, à distance l'un de l'autre, sont positionnés, à un intervalle fixe l'un de l'autre, parallèlement à l'arbre d'enroulement, et autour desquels la section d'extrémité (28) de la sangle de serrage (G) peut être enroulée en forme de boucle,
    caractérisé en ce qu'est prévu un adaptateur (18), qui est relié à la base (2), à pivotement autour d'un axe de pivotement (S), orienté parallèlement à l'axe de l'arbre d'enroulement (3), sachant que l'adaptateur (18) et la base (2) sont découplés l'un de l'autre en ce qui concerne les moments s'exerçant autour de l'axe de pivotement (S) de la liaison articulée, et que l'adaptateur (18) porte les éléments en forme d'axes (21, 22).
  2. Tendeur cliquet selon la revendication 1, caractérisé en ce que l'adaptateur (18) est doté d'une section de liaison (19b, 20b), par l'intermédiaire de laquelle ledit adaptateur (18) est couplé avec la base (2), et d'une section de support (19a, 20a), sur laquelle les éléments en forme d'axes (21, 22) sont fixés, et que la section de liaison (19b, 20b) et la section de support (19a, 20a) sont orientées l'une par rapport à l'autre sous un angle tel que le plan (E1), sur lequel les axes (B21, B22) des éléments en forme d'axes (21, 22) sont situés en commun, diffère du plan (E2), sur lequel l'axe de pivotement (S) de l'adaptateur (18) et l'axe de rotation (Dw) de l'arbre d'enroulement (3) sont situés en commun.
  3. Tendeur cliquet selon la revendication 2, caractérisé en ce que la section de liaison (19b, 20b) et la section de support (19a, 19a) de l'adaptateur (18), vues en projection sur un plan normal par rapport à l'axe de pivotement (S) de l'adaptateur (18), forment un angle obtus (β).
  4. Tendeur cliquet selon l'une des revendications précédentes, caractérisé en ce que, sur la base (2), est prévue une butée (34), qui limite le champ de pivotement de l'adaptateur (18).
  5. Tendeur cliquet selon l'une des revendications précédentes, caractérisé en ce que, à l'extrémité de l'adaptateur (18) opposée à l'axe de pivotement (S), est prévue une tige de support (39), qui s'étend parallèlement à l'axe des éléments en forme d'axes (21, 22) et limite latéralement, avec l'axe de pivotement (S), l'espace dans lequel sont logés les éléments en forme d'axes (21, 22).
  6. Tendeur cliquet selon l'une des revendications précédentes, caractérisé en ce que l'adaptateur (18) est fabriqué en tôle.
  7. Tendeur cliquet selon l'une des revendications précédentes, caractérisé en ce que la base (2) est fabriquée en tôle.
  8. Tendeur cliquet selon l'une des revendications précédentes, caractérisé en ce que la face périphérique (23, 24) des éléments en forme d'axes (21, 22) est dotée d'une structure superficielle, qui est reliée par friction et par emboîtement à la sangle de serrage (G), quand la sangle de serrage (G) est bouclée autour des éléments en forme d'axes (21, 22).
  9. Tendeur cliquet selon la revendication 8, caractérisé en ce qua la structure de la surface est formée par un grattage de la face périphérique (23, 24) des éléments en forme d'axes (21, 22).
  10. Tendeur cliquet selon la revendication 9, caractérisé en ce que la structure de la surface est formée par des bosses (25) et des cavités (26), qui sont formés, en agencement régulier, dans la face périphérique (23, 24) des éléments en forme d'axes (21, 22).
  11. Tendeur cliquet selon la revendication 10, caractérisé en ce que les bosses (25) sont formées à la façon de monticules, qui sont en saillie de la surface périphérique respective, dans la direction radiale.
  12. Accessoire d'élingage comprenant un tendeur cliquet (1), qui est conçu selon l'une des revendications précédentes et une sangle de tension (G), qui est bouclée, avec sa section d'extrémité (28), autour des éléments en forme d'axes (21, 22) du tendeur cliquet (1).
EP20100152318 2010-02-01 2010-02-01 Tendeur cliquet et accessoire d'élingage comportant un tel tendeur cliquet Active EP2353934B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP20100152318 EP2353934B1 (fr) 2010-02-01 2010-02-01 Tendeur cliquet et accessoire d'élingage comportant un tel tendeur cliquet

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Application Number Priority Date Filing Date Title
EP20100152318 EP2353934B1 (fr) 2010-02-01 2010-02-01 Tendeur cliquet et accessoire d'élingage comportant un tel tendeur cliquet

Publications (2)

Publication Number Publication Date
EP2353934A1 EP2353934A1 (fr) 2011-08-10
EP2353934B1 true EP2353934B1 (fr) 2013-09-11

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2810827A1 (fr) 2013-06-05 2014-12-10 Gery Spescha Elément de socle d'un système de sécurisation de chargement destiné à être disposé sur un profil de support et système de sécurisation de charge
NL2014931B1 (nl) * 2015-06-05 2017-02-03 Jpm Beheer B V Spaninrichting en spanbandsamenstel.
CN106184864B (zh) * 2016-07-19 2018-08-10 浙江双友物流器械股份有限公司 一种捆绑器
FR3119449B1 (fr) 2021-02-01 2024-02-16 Nexter Systems Dispositif de maintien d’un tube d’arme par rapport à une structure

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2997761A (en) 1960-05-10 1961-08-29 Frank L Davis Quick acting spearable buckle with toggle takeup and releasable lock
US3749366A (en) * 1972-05-22 1973-07-31 Kinedyne Corp Ratchet buckle
DE2717157C2 (de) * 1977-04-19 1979-05-17 Ludwig Hofmann, Ludhof-Technik, 7580 Buehl Gurt- bzw. Seil-Ratsche
SE408695B (sv) 1977-10-31 1979-07-02 Goteborgs Bandveveri Ab Anordning vid organ for atspenning och lasning av sling eller lastband
US4823443A (en) * 1987-06-18 1989-04-25 Veldon Waters Strap tie down device and method for its use
EP0634305A1 (fr) 1993-07-13 1995-01-18 Yutakamake Company Limited Fermoir pour sangle
DE19839245C1 (de) * 1998-08-28 2000-05-11 Huang Han Ching Spannvorrichtung für Gurte und dergleichen
US6524041B1 (en) * 2000-11-16 2003-02-25 Danut Voiculescu Locking ratchet for a lashing mechanism
DE10128600A1 (de) 2001-06-13 2003-01-02 Spanset Inter Ag Oetwil Am See Zurrgurt

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